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Biomedical subjects

H Okamoto

Publications and source records attributed to H Okamoto.

At least 19 recordsLinked to original sources

A Xenopus homologue of the human beta-amyloid precursor protein: developmental regulation of its gene expression.

Complimentary DNA clones have been isolated from Xenopus larva to delineate a protein highly homologous to the human beta-amyloid precursor protein (APP). Developmental change of Xenopus APP gene expression has been analyzed with molecular probes. From early oogenesis, there is a high accumulation of maternal APP. After fertilization, the mRNA is degraded, reaching a minimum level around the gastrula stage. Then zygotic transcription appears to be initiated, and this continues during the subsequent embryonic and larval stages. Splicing patterns differ between the maternal and zygotic transcripts. The ratio of mRNA including the protease inhibitor domain (PID) sequence is extremely low for the transcript of maternal origin as compared to that for the transcript of zygotic origin. These results suggest some roles for the APP molecule in Xenopus early development.

Amino Acid Sequence

Purification, characterization, cloning, and expression of a glutamic acid-specific protease from Bacillus licheniformis ATCC 14580.

A glutamic acid-specific protease has been purified to homogeneity from Bacillus licheniformis ATCC 14580 utilizing Phe-Leu-D-Glu-OMe-Sepharose affinity chromatography and crystallized. The molecular weight of the protease was estimated to be approximately 25,000 by SDS-polyacrylamide gel electrophoresis. This protease, which we propose to call BLase (glutamic acid-specific protease from B. licheniformis ATCC 14580), was characterized enzymatically. Using human parathyroid hormone (13-34) and p-nitroanilides of peptidyl glutamic acid and aspartic acid, we found a marked difference between BLase and V8 protease, EC 3.4.21.9, although both proteases showed higher reactivity for glutamyl bonds than for aspartyl bonds. Diisopropyl fluorophosphate and benzyloxycarbonyl Leu-Glu chloromethyl ketone completely inhibited BLase, whereas EDTA reversibly inactivated the enzyme. The findings clearly indicate that BLase can be classified as a serine protease. To elucidate the complete primary structure and precursor of BLase, its gene was cloned from the genomic DNA of B. licheniformis ATCC 14580, and the nucleotide sequence was determined. Taking the amino-terminal amino acid sequence of the purified BLase into consideration, the clones encode a mature peptide of 222 amino acids, which follows a prepropeptide of 94 residues. The recombinant BLase was expressed in Bacillus subtilis and purified to homogeneity. Its key physical and chemical characteristics were the same as those of the wild-type enzyme. BLase was confirmed to be a protease specific for glutamic acid, and the primary structure deduced from the cDNA sequence was found to be identical with that of a glutamic acid-specific endopeptidase isolated from Alcalase (Svendsen, I., and Breddam, K. (1992) Eur. J. Biochem. 204, 165-171), being different from V8 protease and the Glu-specific protease of Streptomyces griseus which consist of 268 and 188 amino acids, respectively.

Amino Acid Sequence

Crystal structure of papain-succinyl-Gln-Val-Val-Ala-Ala-p-nitroanilide complex at 1.7-A resolution: noncovalent binding mode of a common sequence of endogenous thiol protease inhibitors.

Succinyl-Gln-Val-Val-Ala-Ala-p-nitroanilide corresponding to a common sequence of endogenous thiol protease inhibitors is a noncompetitive reversible inhibitor of papain. In order to elucidate the binding mode of the inhibitor at the atomic level, its complex with papain was crystallized at ca. pH 7.0 using the hanging drop method, and the crystal structure was analyzed at 1.7-A resolution. The crystal has space group P2(1)2(1)2(1), with a = 43.09, b = 102.32, c = 49.69 A, and Z = 4. A total of 47,215 observed reflections were collected on the imaging plates using the same single crystal, and 19,833 unique reflections with Fo > sigma (Fo) were used for structure determination and refinement. The papain structure was determined by use of the atomic coordinates of papain previously reported, and then refined by the X-PLOR program. The inhibitor molecule was located on a difference Fourier map and fitted into the electron density with the aid of computer graphics. The complex structure was finally refined to R = 19.6% including 118 solvent molecules. The X-ray analysis of the complex crystal shows that the inhibitor is located at the R-domain side, not in the center of the binding site created by the R- and L-domains of papain. Such a binding mode of the inhibitor explains well the biological behavior that the inhibitor exhibits against papain. Comparison with the structure of papain-stefin B complex indicates that the structure of the Gln-Val-Val-Ala-Gly sequence itself is not necessarily the essential requisite for inhibitory activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Expression of human regenerating gene mRNA and its product in normal and neoplastic human pancreas.

BACKGROUND: Localization of human regenerating gene (reg) mRNA and its product was investigated in normal and neoplastic human pancreas with the in situ hybridization method and immunohistochemical studies. METHODS: Both reg mRNA and reg protein were observed in acinar cells of the pancreas, but neither was found in ductal or islet cells. Immunoreactive reg was observed in an acinar cell carcinoma, a pancreatoblastoma, a solid and cystic tumor, and 5 of 20 duct cell carcinomas, but it was not found in 15 endocrine tumors and 2 microcystic adenomas. RESULTS: For comparison with reg, alpha-1-antitrypsin (AAT), lysozyme, chromogranin A (CMG), CA 19-9, carcinoembryonic antigen (CEA), cytokeratin, vimentin, and alpha-fetoprotein (AFP) were assessed in those tumors. An acinar cell carcinoma and a pancreatoblastoma had positive results for AAT, lysozyme, cytokeratin, and AFP but negative results for vimentin. An acinar cell carcinoma showed cells focally immunoreactive for CMG and CEA. A solid and cystic tumor had strongly positive results for AAT and vimentin and focally positive results for CMG and pancreatic hormones. Microcystic adenomas had abundant glycogen and strong immunoreactivity for cytokeratin. Ductal cell carcinomas showed cells focally positive for AAT, lysozyme, CMG, CA 19-9, and CEA. CONCLUSIONS: The localization of reg protein was not consist with that of any other proteins examined in the current study. Thus, reg protein was considered a useful marker for acinar cell differentiation; however, ectopic expression of reg also was observed in ductal cell carcinomas. In ductal cell carcinomas, expression of reg immunoreactivity was considered as one of phenotypic heterogeneity, as seen in AAT, lysozyme, and CMG immunoreactivity.

Calcium-Binding Proteins

The primary structure of rat rig/ribosomal protein S15 gene.

We have isolated rat rig/ribosomal protein S15 gene from a DNA library derived from a rat insulinoma and determined the complete nucleotide sequence. The rat rig/S15 gene is composed of four exons and three introns spanning 2 kbp and exhibits distinctive structural features unique for a ribosomal protein gene.

Amino Acid Sequence

Structural determination of Saccharomyces cerevisiae rig gene and identification of its product as ribosomal protein S21.

rig was originally isolated from a rat insulinoma-derived cDNA library. The 145 amino acid sequence of the rig protein is invariant in mammalian cDNAs. In this paper, we have isolated the cDNA and genomic clones for yeast (Saccharomyces cerevisiae) rig, determined their nucleotide sequences, and identified the gene product. The gene and the mRNA encode a basic protein of 142 amino acids which has 61.3% amino acid identity with mammalian rig protein. On two-dimensional gel electrophoresis, the in vitro transcription/translation product of yeast rig cDNA co-migrated with yeast ribosomal protein S21. These results led to the conclusion that yeast rig ribosomal protein S21 and to the determination of the previously unknown primary structure of yeast S21 protein. Unlike most ribosomal protein genes of S. cerevisiae, the gene exists as a single copy in a haploid set of the yeast genome and has no intron, locating at chromosome VII or XV.

Amino Acid Sequence

The source of the oxygen atom in the alpha-hydroxyglycine intermediate of the peptidylglycine alpha-amidating reaction.

Peptidylglycine alpha-amidating activity catalyses the oxidation of a C-terminally glycine-extended peptide to a desglycine alpha-amidated peptide at the expense of ascorbate and O2 in the presence of Cu2+. The reaction involves oxidative N-dealkylation within the terminal glycine residue, with retention of the glycine N atom and release of the remainder as glyoxylate. Recent studies by us and others have revealed that the reaction consists of two steps via a carbinolamide as an intermediate (peptidyl alpha-hydroxyglycine), and also that two separate enzymes derived from a common precursor protein catalyse these steps, formation of the carbinolamide and its conversion into alpha-amide and glyoxylate. As for the mechanism of carbinolamide formation, two distinct pathways can be considered: direct mono-oxygenation at the glycine alpha-C atom and dehydrogenation leading to an imine followed by hydration. To draw a distinction between them, we carried out the reaction with D-Tyr-Val-Gly as the substrate either in the H2(18)O-enriched medium or under an atmosphere of 18O2, and isolated the alpha-hydroxylglycine intermediate. The fast-atom-bombardment mass-spectral analysis demonstrated that the hydroxy O atom comes from O2, but not from H2O, indicating that the alpha-hydroxylation should be a monooxygenase reaction.

Amidine-Lyases

Serodiagnosis of hepatitis C virus infection by ELISA for antibodies against the putative core protein (p20c) expressed in Escherichia coli.

The putative core gene of hepatitis C virus (HCV) was incorporated into a plasmid vector (pCC5-J4), and expressed in Escherichia coli. The product of 180 amino acids (p20c) was purified by gel electrophoresis in the presence of sodium dodecyl sulfate, and used in enzyme-linked immunosorbent assay for antibodies against the putative core protein of HCV (anti-p20c). Anti-p20c was detected in 13 (1.5%) of 873 apparently healthy blood donors. It was detected in 205 (86.5%) of 237 patients with acute or chronic non-A, non-B (NANB) hepatic disease, significantly more frequently (p less than 0.01) than antibodies against the C100-3 protein encoded by nonstructural regions of HCV (anti-C100-3) that was found in 178 (75.1%). Anti-p20c developed in the circulation of a patient with acute NANB hepatitis much earlier than anti-C100-3. HCV RNA was detected by polymerase chain reaction in serum samples from blood donors positive for anti-p20c in high titers, one of which was negative for anti-C100-3. These results indicated that anti-p20c would be useful in complementing anti-C100-3 for the diagnosis of NANB hepatitis and further decreasing the incidence of posttransfusion NANB hepatitis.

Adolescent

Antibodies against synthetic oligopeptides deduced from the putative core gene for the diagnosis of hepatitis virus infection.

Immunoassays were developed to detect antibodies against oligopeptides deduced from the putative core gene of hepatitis C virus, and their performances were compared with that of the commercial immunoassay for antibodies against the product of nonstructural regions of hepatitis C virus (anti-C100-3). A 19-mer oligopeptide (CP10) and a 36-mer oligopeptide (CP9) were chemically synthesized, which represented hydrophilic regions of the product of the hepatitis C virus core gene. They were used to capture corresponding antibodies, anti-CP10 and anti-CP9, by enzyme-linked immunosorbent assay in sera from patients with acute or chronic non-A, non-B liver disease and in blood donations. At the onset of acute non-A, non-B hepatitis, anti-CP10 was detected in 15 of 20 patients (75%), and anti-CP9 was detected in 14 patients (70%). This was more frequent than anti-C100-3, which was found in only 9 patients (45%). In 186 patients with chronic non-A, non-B liver disease, anti-CP9, anti-CP10 or both were detected in 170 patients (91%). This was more frequent than anti-C100-3, which was found in 138 patients (74%). Blood with anti-CP10 as the single serological marker for hepatitis C virus infection transmitted non-A, non-B hepatitis by needlestick exposure. In sera from 558 apparently healthy blood donors, anti-CP10 was detected in 55 donors (9.9%), anti-CP9 was detected in 26 donors (4.7%) and anti-C100-3 was detected in 7 donors (1.3%).(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence

Fulminant hepatitis related to transmission of hepatitis B variants with precore mutations between spouses.

A precore defective variant of hepatitis B virus has been indicated to cause fulminant hepatitis in various instances such as intrahospital outbreaks or mother-to-child transmission of hepatitis B virus. To learn whether similar variants are involved in interspouse transmission, we analyzed three cases of fulminant hepatitis B that developed in formerly healthy subjects whose only exposure to hepatitis B virus was contact with their longtime spouses, who were carriers of HBV and positive for antibody to HBe. The DNA clones for precore and S genes were propagated from patients and spouses and sequenced. Because of the conservation of S-gene sequences and the identity of subtypes between patient and spouse, it was suggested that patients were infected with hepatitis B virus from their spouses, not from other sources. A TGG-to-TAG mutation at the 28th codon of the precore gene of hepatitis B virus was commonly observed in all DNA clones from patients with fulminant hepatitis and from their spouses. A 29th-codon GGC-to-GAC mutation was additionally evident in DNAs from one patient-and-spouse couple. A significant rise in the circulating hepatitis B virus concentration was transiently observed in the index spouse of this case just before development of fulminant hepatitis in her husband. The increase in circulating HBV DNA was associated with a rise in abundancy of variants with mutations at both the 28th and 29th codons, compared with variants with only a 28th-codon mutation. The double mutation in hepatitis B virus DNA may either help the virus escape immune surveillance or replicate at a higher rate than before.

Base Sequence

The degree of variability in the amino terminal region of the E2/NS1 protein of hepatitis C virus correlates with responsiveness to interferon therapy in viremic patients.

We investigated amino acid heterogeneity in the variable regions of the E2/NS1 viral protein in interferon-responsive and interferon-nonresponsive patients with chronic hepatitis C virus infection. The study assessed whether any particular heterogeneity pattern(s) could be useful in predicting responsiveness to interferon treatment. The nucleic acid sequences of the hepatitis C virus genome were analyzed from six patients with chronic hepatitis treated with an interferon-beta, three of whom did not respond to the therapy and another three who showed remarkable improvement in the serum levels of liver enzymes and hepatitis C virus RNA after 6 mo. The complementary DNA clones propagated from each of the nonresponders showed significant diversity of both nucleotide and amino acid sequence, especially at the hypervariable region 1 within the putative E2/NS1 gene of the virus, suggesting that these patients were infected with a large heterogeneous pool of hepatitis C virus variants. In contrast, the responders showed little or no diversity in the sequence of the complementary DNA clones, suggesting that they were infected with one or a small population of viral genotypes containing significantly less variability in the E2/NS1 hypervariable region 1. These results suggested that a large variable population of hepatitis C virus genotypes is implicated in patients who are nonresponders to interferon treatment. In addition, a significant change in the hepatitis C virus genotype population was observed in nonresponders after interferon treatment. This may reflect a differential viral sensitivity to interferon, selective immune pressure by the host or both.

Adult

Two distinct subtypes of hepatitis C virus defined by antibodies directed to the putative core protein.

Four distinct genotypes of hepatitis C virus types I, II, III and IV have been identified by comparison of nucleotide sequences of isolates from different areas of the world. We examined the possibility that hepatitis C virus may have serologically definable subtypes. Enzyme-linked immunosorbent assay systems were prepared by use of two synthetic peptides deduced from the putative core protein of hepatitis C virus. The following are the two peptides that were used: (a) IPKARRPEGRTWAQPGY (subtype-1) conserved in hepatitis C virus isolates with type I and type II genotypes; and (b) IPKDRRSTGKSWGKPGY (subtype-2) conserved in type III and type IV genotypes. With the enzyme-linked immunosorbent assays, the subtype-1 antibodies were detected in 26 (68%) of 38 subjects whose hepatitis C virus RNA had been genotyped as type I or type II, whereas subtype-2 antibodies were not detected. Inversely, the subtype-2 antibodies were detected in 10 (56%) of 18 subjects with hepatitis C virus RNA genotypes III or IV, whereas subtype-1 antibodies were detected in none of them. These results suggest that hepatitis C virus has two serologically distinguishable core antigen subtypes, corresponding to either genotype I/II or genotype III/IV. Subtyping of HCV by serological methods would contribute to tracking transmission routes of the virus, especially in cases where serum samples were not stored under conditions to preserve RNA or in infected hosts who have cleared the virus and therefore have only antibodies remaining to identify the infection.

Amino Acid Sequence

Hepatitis B surface antigen particles of subtypes adw and adr, and compound subtype (adwr) in symptom-free carriers in Japan.

Of sera from 1,878 Japanese blood donors who carried hepatitis B surface antigen (HBsAg), 420 were subtyped as adw (22.4%) and 1,443 as adr (76.8%); only 15 (0.8%) contained HBsAg of subtype ayw or ayr. Sera with HBsAg/adr had higher HBsAg titres than those with HBsAg/adw (geometric mean of haemagglutination titre: 10.1 +/- 2.4 vs. 9.7 +/- 2.4, p less than 0.01), and a higher prevalence of hepatitis B e antigen (24% vs. 13%, p less than 0.001). Carriers of HBsAg/adr progressively predominated over those of HBsAg/adw with increasing age. Of sera from 1,863 carriers of HBsAg/adw or HBsAg/adr, 182 (9.8%) contained HBsAg particles with both subtypic determinants in the w/r allele. The presence of w and r determinants on the same particles was ascertained by sandwiching them between monoclonal antibody with the specificity for w and that with the specificity for r. HBsAg particles of compound subtype (adwr) were found more often in sera with hepatitis B e antigen than those without it (145/403 [36.0%] vs. 37/1,460 [2.5%], p less than 0.001). Sera with HBsAg/adwr particles had HBsAg titres higher than those without them (12.4 +/- 1.9 vs. 9.7 +/- 2.3, p less than 0.001). HBsAg/adwr particles arise from phenotypic mixing of the S-gene product of wild-type virus and that of mutants with point mutations for subtypic changes. The results obtained indicated that HBV strains of subtype adr have a higher replicative activity than those of adw, and suggested that mutations in the S gene for subtypic changes would be associated with an active replication of hepatitis B virus.

Adult